Title :
Constrained flooding: a robust and efficient routing framework for wireless sensor networks
Author :
Zhang, Ying ; Fromherz, Markus
Author_Institution :
Palo Alto Res. Center Inc., CA, USA
Abstract :
Flooding protocols for wireless networks in general have been shown to be very inefficient and therefore are mainly used in network initialization or route discovery and maintenance. In this paper, we propose a framework of constrained flooding protocols. The framework incorporates a reinforcement learning kernel, a differential delay mechanism, and a constrained and probabilistic retransmission policy. This type of protocol takes the advantages of robustness from flooding, but maintains energy efficiency by constraining retransmissions. Without the use of any control packets, such a protocol adapts to the specific routing requirements of the task and the dynamic changes of the network. We analyze this framework in simulation using a real-world application in sensor networks.
Keywords :
learning (artificial intelligence); probability; routing protocols; wireless sensor networks; differential delay mechanism; flooding protocol; probabilistic retransmission policy; reinforcement learning kernel; routing framework; wireless sensor network; Analytical models; Delay; Energy efficiency; Floods; Kernel; Learning; Robustness; Routing protocols; Wireless application protocol; Wireless sensor networks; Routing; Security; Sensor Networks;
Conference_Titel :
Advanced Information Networking and Applications, 2006. AINA 2006. 20th International Conference on
Print_ISBN :
0-7695-2466-4
DOI :
10.1109/AINA.2006.132